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    • 3. 发明授权
    • Cyclic steam stimulation using RF
    • 使用RF的循环蒸汽刺激
    • US09027638B2
    • 2015-05-12
    • US13233596
    • 2011-09-15
    • Maxine Jones MadisonWayne Reid DreherFrancis Eugene ParscheMark Alan Trautman
    • Maxine Jones MadisonWayne Reid DreherFrancis Eugene ParscheMark Alan Trautman
    • E21B43/24
    • E21B43/2408
    • A method of producing hydrocarbons from a well. The method begins by injecting steam into a well. The bitumen in the formation is then heated with the injected steam, followed by ceasing the injection of steam into the well and then by soaking the bitumen with the injected steam and collecting the heated oil. Steam that has condensed is revaporized by directing RF/MW radiation to the steam allowing for more bitumen to be produced without injecting more steam. In addition, some of the steam could become superheated, wherein the temperature of the superheated steam is greater than the temperature of the steam. The bitumen is heated by the revaporized steam and the superheated steam, followed by soaking the bitumen with the revaporized steam and the superheated steam. Hydrocarbons are then produced from the well.
    • 从井中生产烃的方法。 该方法从将蒸汽注入井中开始。 然后将地层中的沥青与注入的蒸汽一起加热,然后停止向井中注入蒸汽,然后通过将沥青与注入的蒸汽浸泡并收集加热的油。 通过将RF / MW辐射引导到蒸汽来蒸发已经蒸发的蒸汽,允许在不喷射更多蒸汽的情况下生产更多的沥青。 此外,一些蒸汽可能变得过热,其中过热蒸汽的温度大于蒸汽的温度。 沥青被蒸发的蒸汽和过热蒸汽加热,然后用再蒸发的蒸汽和过热蒸汽浸泡沥青。 然后从井中产生碳氢化合物。
    • 8. 发明授权
    • Applicator and method for RF heating of material
    • RF加热材料的涂布器和方法
    • US08729440B2
    • 2014-05-20
    • US12396057
    • 2009-03-02
    • Francis Eugene Parsche
    • Francis Eugene Parsche
    • H05B6/74
    • H05B6/72H05B6/80
    • A radio frequency heater is disclosed including a vessel for containing material to be heated and a radio frequency radiating surface. The vessel has a wall defining a reservoir. The radio frequency radiating surface at least partially surrounds the reservoir. The radiating surface includes two or more circumferentially spaced petals that are electrically isolated from other petals. The petals are positioned to irradiate at least a portion of the reservoir, and are adapted for connection to a source of radio frequency alternating current. A generally conical tank or tank segment having a conically wound radio frequency applicator is also contemplated. Also, a method of heating an oil-water process stream is disclosed. In this method a radio frequency heater and an oil-water process stream are provided. The process stream is irradiated with the heater, thus heating the water phase of the process stream.
    • 公开了一种射频加热器,包括用于容纳待加热材料的容器和射频辐射表面。 容器具有限定储存器的壁。 射频辐射表面至少部分地围绕储存器。 辐射表面包括与其他花瓣电隔离的两个或更多个周向间隔开的花瓣。 花瓣被定位成照射储存器的至少一部分,并且适于连接到射频交流电源。 还设想了具有锥形绕射射频施加器的大致锥形的罐或槽段。 另外,公开了一种加热油水处理流的方法。 在该方法中,提供射频加热器和油水处理流。 用加热器照射工艺流,从而加热工艺流的水相。
    • 9. 发明授权
    • Litz heating antenna
    • 丽兹加热天线
    • US08692170B2
    • 2014-04-08
    • US12882354
    • 2010-09-15
    • Francis Eugene Parsche
    • Francis Eugene Parsche
    • H05B6/10
    • H01Q1/04E21B43/2401E21B43/2408H05B6/54H05B2214/03
    • An electromagnetic heating applicator is disclosed. The applicator includes a first strand and a second strand, each of which has an insulated portion, a bare portion, and is made up of at least one wire. The first and second strands are braided, twisted, or both braided and twisted together such that the bare portion of each strand is adjacent to the insulated portion of the other strand. A system and method for heating a geological formation are also disclosed. The system includes an applicator in a bore that extends into a formation, an extraction bore connected to a pump and positioned under the first bore, and transmitting equipment connected to the applicator. The method includes the steps of providing the components of the system, connecting the applicator to RF power transmitting equipment, applying RF power to the applicator using the transmitting equipment, and pumping hydrocarbons out of the extraction bore.
    • 公开了一种电磁加热施加器。 施加器包括第一股线和第二股线,每个股线具有绝缘部分,裸露部分,并且由至少一根线构成。 第一和第二股线被编织,扭曲或两者编织和扭绞在一起,使得每条线的裸露部分与另一股线的绝缘部分相邻。 还公开了用于加热地质层的系统和方法。 该系统包括延伸到地层的孔中的施加器,连接到泵并位于第一孔下方的抽取孔以及连接到施加器的传输设备。 该方法包括以下步骤:提供系统的部件,将施加器连接到RF功率传输设备,使用发射设备向施加器施加RF功率,并将碳氢化合物从抽出孔中抽出。
    • 10. 发明授权
    • Continuous dipole antenna
    • 连续偶极天线
    • US08648760B2
    • 2014-02-11
    • US12820977
    • 2010-06-22
    • Francis Eugene Parsche
    • Francis Eugene Parsche
    • H01Q9/16G01V3/00
    • H01Q9/16E21B36/04E21B43/2401E21B43/2408E21B43/305H01Q1/04H01Q1/44
    • A dipole antenna may be created by surrounding a portion of the continuous conductor with a nonconductive magnetic bead, and then applying a power source to the continuous conductor across the nonconductive magnetic bead. The nonconductive magnetic bead creates a driving discontinuity without requiring a break or gap in the conductor. The power source may be connected or applied to the continuous conductor using a variety of preferably shielded configurations, including a coaxial or twin-axial inset or offset feed, a triaxial inset feed, or a diaxial offset feed. A second nonconductive magnetic bead may be positioned to surround a second portion of the continuous conductor to effectively create two nearly equal length dipole antenna sections on either side of the first nonconductive magnetic bead. The nonconductive magnetic beads may be comprised of various nonconductive magnetic materials, and preformed for installation around the conductor, or injected around the conductor in subsurface applications. Electromagnetic heating of hydrocarbon ores may be accomplished.
    • 可以通过用非导电磁珠围绕连续导体的一部分,然后将电源施加到穿过非导电磁珠的连续导体上来产生偶极天线。 非导电磁珠产生驱动不连续性,而不需要导体中的断裂或间隙。 可以使用各种优选的屏蔽结构将电源连接或施加到连续导体,包括同轴或双轴插入或补偿进给,三轴插入进给或双轴补偿进给。 可以将第二非导电磁珠定位成围绕连续导体的第二部分,以在第一非导电磁珠的任一侧上有效地产生两个几乎相等长度的偶极天线部分。 非导电磁珠可以由各种非导电磁性材料组成,并预先安装在导体周围,或在地下应用中注入导体周围。 可以实现碳氢化合物矿石的电磁加热。